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Signal-transducing adaptor molecules STAM1 and STAM2 are required for T-cell development and survival
Mitsuhiro Yamada1, Naoto Ishii, Hironobu Asao
1Department of Microbiology and Immunology, Tohoku University School of Medicine, Sendai 980-8575, Japan.
Abstract:
We previously reported that the STAM family members STAM1 and STAM2 are phosphorylated on tyrosine upon stimulation with cytokines through the gammac-Jak3 signaling pathway, which is essential for T-cell development. Mice with targeted mutations in either STAM1 or STAM2 show no abnormality in T-cell development, and mice with double mutations for STAM1 and STAM2 are embryonically lethal; therefore, here we generated mice with T-cell-specific double mutations for STAM1 and STAM2 using the Cre/loxP system. These STAM1(-/-) STAM2(-/-) mice showed a significant reduction in thymocytes and a profound reduction in peripheral mature T cells. In proliferation assays, thymocytes derived from the double mutant mice showed a defective response to T-cell-receptor (TCR) stimulation by antibodies and/or cytokines, interleukin-2 (IL-2) and IL-7. However, signaling events downstream of receptors for IL-2 and IL-7, such as activations of STAT5, extracellular signal-regulated kinase (ERK), and protein kinase B (PKB)/Akt, and c-myc induction, were normal in the double mutant thymocytes. Upon TCR-mediated stimulation, prolonged activations of p38 mitogen-activated protein kinase and Jun N-terminal protein kinase were seen, but activations of ERK, PKB/Akt, and intracellular calcium flux were normal in the double mutant thymocytes. When the cell viability of cultured thymocytes was assessed, the double mutant thymocytes died more quickly than controls. These results demonstrate that the STAMs are indispensably involved in T-cell development and survival in the thymus through the prevention of apoptosis but are dispensable for the proximal signaling of TCR and cytokine receptors.
Insights
STAM proteins are crucial for T-cell development and survival by preventing apoptosis. T-cell-specific STAM1 and STAM2 double mutant mice show reduced T-cell numbers and defective responses to stimulation.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- STAM family members STAM1 and STAM2 are phosphorylated via the gammac-Jak3 pathway, essential for T-cell development.
- Individual STAM1 or STAM2 mutations do not affect T-cell development, but double mutations are embryonically lethal.
Purpose of the Study:
- To investigate the role of STAM1 and STAM2 in T-cell development and function.
- To generate and analyze T-cell-specific double knockout mice for STAM1 and STAM2.
Main Methods:
- Cre/loxP system used to create T-cell-specific STAM1 and STAM2 double knockout mice.
- Analysis of thymocyte reduction, peripheral T-cell counts, and proliferation assays.
- Assessment of signaling pathways (STAT5, ERK, Akt, p38 MAPK, JNK) and cell viability upon stimulation.
Main Results:
- STAM1(-/-) STAM2(-/-) mice exhibited significantly reduced thymocytes and peripheral mature T cells.
- Thymocytes showed defective proliferation in response to T-cell receptor (TCR) and cytokine stimulation (IL-2, IL-7).
- Downstream signaling pathways (STAT5, ERK, Akt) and calcium flux were normal; however, prolonged p38 MAPK and JNK activation occurred, and double mutant thymocytes showed increased apoptosis.
Conclusions:
- STAM proteins are essential for T-cell development and survival in the thymus by inhibiting apoptosis.
- STAMs are dispensable for the proximal signaling of TCR and cytokine receptors.
- The findings highlight STAMs' critical role in maintaining T-cell homeostasis.